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A polypeptide micelle template method to prepare polydopamine composite nanoparticles for synergistic photothermalchemotherapy
Motivated by the wide interest in natural melanin and biomimetic polydopamine (PDA) in biomedical applications, the easy self-polymerization of dopamine (DA) under mild conditions, and the strong adhesive ability of PDA on various surfaces/interfaces, we for the first time develop a polypeptide mice...
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Published in: | Polymer chemistry 2016-08, Vol.7 (35), p.5552-5562 |
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Main Authors: | , , , |
Format: | Article |
Language: | |
Online Access: | Get full text |
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Summary: | Motivated by the wide interest in natural melanin and biomimetic polydopamine (PDA) in biomedical applications, the easy self-polymerization of dopamine (DA) under mild conditions, and the strong adhesive ability of PDA on various surfaces/interfaces, we for the first time develop a polypeptide micelle template method to fabricate PDA-coated composite nanoparticles and their anticancer drug doxorubicin (DOX)-loaded ones. After continuous-wave diode laser irradiation of the nanocomposite solution (5 min, 808 nm, 2 W cm
2
), the magnitude of temperature elevation increased over the concentration of DA and the reaction time, respectively, and the nanocomposite solution was heated by 33.4 C compared to the 4.2 C increase for the PBS buffer. As evaluated by flow cytometry, and fluorescence microscopy, AO/EB double staining technique, and standard MTT assay, the DOX-loaded nanocomposites entered into HeLa cells and killed them efficiently. They gave a half maximal inhibitory concentration (IC
50
) of 30.5 g mL
1
and a combination index of 0.59, which exhibits a good synergistic antitumor effect for the combination photothermalchemotherapy. By utilizing the core-cross-linked polypeptide micelles as a soft template, this work provides a facile strategy for the fabrication of biocompatible PDApolymer nanocomposites, which hold promise for the synergistic photothermalchemotherapy of cancer.
A polypeptide micelle template method was, for the first time, developed to fabricate polydopamine nanocomposites for the synergistic photothermalchemotherapy of cancer. |
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ISSN: | 1759-9954 1759-9962 |
DOI: | 10.1039/c6py01189f |